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GAD1 Encodes a Secreted Peptide That Regulates Grain Number Grain Length and Awn Development in Rice Domestication

机译:GAD1编码一种分泌肽该肽调节水稻驯化中的粒数粒长和自身发育

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摘要

Cultivated rice (Oryza sativa) was domesticated from wild rice (Oryza rufipogon), which typically displays fewer grains per panicle and longer grains than cultivated rice. In addition, wild rice has long awns, whereas cultivated rice has short awns or lacks them altogether. These changes represent critical events in rice domestication. Here, we identified a major gene, GRAIN NUMBER, GRAIN LENGTH AND AWN DEVELOPMENT1 (GAD1), that regulates those critical changes during rice domestication. GAD1 is located on chromosome 8 and is predicted to encode a small secretary signal peptide belonging to the EPIDERMAL PATTERNING FACTOR-LIKE family. A frame-shift insertion in gad1 destroyed the conserved cysteine residues of the peptide, resulting in a loss of function, and causing the increased number of grains per panicle, shorter grains, and awnless phenotype characteristic of cultivated rice. Our findings provide a useful paradigm for revealing functions of peptide signal molecules in plant development and helps elucidate the molecular basis of rice domestication.
机译:栽培稻(Oryza sativa)是从野生稻(Oryza rufipogon)中驯化而来的,与野生稻相比,野生稻通常每穗的谷物更少,谷物更长。另外,野生稻具有长芒,而栽培稻具有短芒或完全缺乏。这些变化代表了水稻驯化中的关键事件。在这里,我们确定了一个主要基因,谷物编号,谷物长度和小麦发育1(GAD1),该基因调控水稻驯化期间的那些关键变化。 GAD1位于8号染色体上,预计将编码一个小表皮信号肽,属于表皮形成因子样家族。在gad1中移码插入会破坏该肽的保守半胱氨酸残基,导致功能丧失,并导致栽培稻的每穗粒数增加,粒变短和无芒表型。我们的发现为揭示肽信号分子在植物发育中的功能提供了有用的范例,并有助于阐明水稻驯化的分子基础。

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